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Researcher Profile

Dr. Rachmat Adhi Wibowo M.S.

Dr. Rachmat Adhi Wibowo M.S.

Function

Scientist

Center

Energy

Competence Unit

Energy Conversion and Hydrogen

E-Mail

Rachmat.Wibowo(at)ait.ac.at

Phone

+43 50550 6078

Fax

+43 505506311

Address

Giefinggasse 2, 1210 Vienna

Career

Field: Photovoltaic Technologies

Main Research: Emerging Technologies

Experience:

Dr. Wibowo has intensively been working on the Synthesis of earth-abundant kesterite (Cu2ZnSn(S,Se)4 materials for thin film photovoltaics by wide variety of processing routes, from vacuum-based (sputtering, pulsed laser deposition) and non-vacuum-based processes (electrochemical deposition).
 
His current research activities are developing novel approach for high-throughput kesterite fabrication process using solution-based process, investigating the alternative inorganic-organic buffer layer for kesterite  and assessing the low temperature chalcogenisation for synthesizing kesterite and chalcopyrite Cu(In,Ga)(S,Se)2 films.
 
In addition to kesterite research, he has also solid experiences on the preparation and characterisation of transparent conducting oxides (ZnO, Al-doped ZnO, Ga-doped ZnO and Indium-Tin Oxide) films and diverse Cd-free buffer layers for chalcogenide-based thin film photovltaics.
 
 
 

  • 2008-2009: Research Professor
    Yeungnam University / South Korea
  • 2009-2010: Research Fellow
    Nanyang Technological University / Singapore
  • 2010-2013: Alexander von Humboldt Postdoctoral Fellow
    Friederich-Alexander Universität Erlangen-Nürnberg / Germany
  • 2013-now: Scientist
    AIT Austrian Institute of Technology GmbH / Austria
  • 2021: Member of Reviewer Board MDPI Journal Publishing
  • 2010: Alexander von Humboldt Foundation Fellowship
  • 2012: Young Scientist Lindau Nobel Laureate Meeting for Physics
  • 2012: Best Poster Award - European Materials Research Society (E-MRS) Spring Meeting 2012

Publications

  • Powder-to-film approach for fabricating critical raw material-free kesterite Cu2ZnSn(S,Se)4 thin film photovoltaic: A review,
    Author(s): Rachmat Adhi Wibowo
    Journal: Solar Energy, 176 (2018) ; 157
  • Dynamic interplay of alkali cations and a natural organic binder in the microstructural evolution of Cu 2 ZnSnS 4 thin films prepared from Cu 2 ZnSnS 4 powder-containing inks
    Author(s): Anies Mutiari, Neha Bansal, Raad Hamid, Martin Artner, Veronika Mayer, Juergen Roth, Matthias Weil, and Rachmat Adhi Wibowo
    Journal: RSC Adv.ance, 9 (2019) ; 28670
  • Rapid Processing of In-Doped ZnO by Spray Pyrolysis from Environment-Friendly Precursor Solutions
    Author(s): Nina Winkler, Adhi Rachmat Wibowo, Bernhard Kubicek, Wolfgang Kautek, Giovanni Ligorio, Emil J. W. List-Kratochvil and Theodoros Dimopoulos
    Journal: Coatings, 4 (2019) ; 245
  • Material investigation on magnetron sputtered $\text{TiO}_{2-x}$ alternative buffer layers for CIGSe absorber produced in an industrial roll-to-roll hybrid sputter co-evaporation process Conference Paper
    Author(s): David Stock, Nikolaus Weinberger,, Theodoros Dimopoulos, Rachmat Adhi Wibowo, h Andreas Zimmermann, Georg Strauss
    Journal: Conference: 2020 IEEE 47th Photovoltaic Specialists Conference (PVSC) (2020)
  • Fast sputter deposition of MoOx/metal/MoOx transparent electrodes on glass and PET substrates
    Author(s): Selina Goetz, Rachmat Adhi Wibowo, Martin Bauch, Neha Bansal, Giovanni Ligorio, Emil List-Kratochvil, Christian Linke, Enrico Franzke, Jörg Winkler, Markus Valtiner & Theodoros Dimopoulos
    Journal: Journal of Material Science, 56 (2021) ; 9047
  • Design and implementation of an ultrathin dielectric/metal/dielectric transparent electrode for Cu2ZnSnS4 thin-film photovoltaics
    Author(s): Anies Mutiari, Theodoros Dimopoulos, Martin Bauch, Ankit Mittal, Matthias Weil, Rachmat Adhi Wibowo.
    Journal: Solar Energy Materials and Solar Cells, 230 (2021) ; 111247
  • A 50683/2018 SUSPENSION ZUR HERSTELLUNG EINER HALBLEITERSCHICHT
    Inventor: Rachmat Adhi Wibowo, Neha Bansal
    Submission Date: 08.09.2018
    Issue Date: 15.02.2020

Further Information

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